High-contrast Angiography

High-contrast angiography is an imaging approach that makes blood vessels more distinguishable from surrounding tissue, enabling detailed analysis of vascular anatomy and circulation. It works by introducing or detecting a vascular contrast signal and optimizing image acquisition so differences between blood, vessel walls, and nearby structures become more pronounced. In neuroscience, this approach supports visualization of cerebral arteries, veins, and microvascular networks, helping researchers assess vessel organization, perfusion, and changes associated with injury or disease. By improving vascular detail, high-contrast angiography contributes to studies of brain blood flow, neurovascular function, and the relationship between vascular abnormalities and neurological disorders.

High-contrast Angiography - Related Videos

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JoVE EoE - Large Animal Models

Assessing Vessel Perfusion via Angiography: A Technique to Introduce Contrast Agent in Descending Aorta to Visualize Blood Vessel Perfusion in Rabbit Model

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2025

This video describes the technique for performing angiography by injecting a contrast agent into the descending aorta to visualize blood vessel perfusion in a rabbit model. This technique helps to understand the perfusion in blood vessels with blockages and after treatment during recovery.

Detection of Internal Carotid Artery Narrowing Using Digital Subtraction Angiography

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2025

Position a human patient with internal carotid stenosis, a condition characterized by narrowing of the internal carotid artery, on the imaging table for digital subtraction angiography (DSA). Insert an angiocatheter into the common carotid artery at the fourth cervical vertebra level. Capture a pre-contrast X-ray image to record background structures like bones and soft tissues using X-ray irradiation. Administer an iodine-based contrast medium into the carotid artery. The contrast medium...

Time-of-Flight Magnetic Resonance Angiography to Visualize Blood Vasculature

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2025

Position the patient's head inside the radiofrequency, or RF, coil of a magnetic resonance imaging, or MRI, machine.Initiate the time-of-flight magnetic resonance angiography or TOF MRA, a non-invasive technique for visualizing blood vessels.Select a tissue slice for imaging to visualize arteries and veins.Apply an RF pulse to excite the protons within the selected imaging slice. These protons release energy, which is detected as an MR signal.Repeated application of RF pulses saturates the MR...

Research

JoVE Journal - Biology
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Phase Contrast and Differential Interference Contrast (DIC) Microscopy

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Cited by 26 •

2008

This protocol highlights the principles and practical applications of Phase and Differential Interference Contrast (DIC)...

Detecting Abnormalities in Choroidal Vasculature in a Mouse Model of Age-related Macular Degeneration by Time-course Indocyanine Green Angiography

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Cited by 13 •

2014

Indocyanine Green Angiography (or ICGA) performed by tail vein injection provides high quality ICGA time course images to characterize abnormalities in mouse choroid.

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